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The Effect of Herbicides on Lateral Roots and Nut Quality of Pecans

Published online by Cambridge University Press:  12 June 2017

J. A. Norton
Affiliation:
Department of Soil and Crop Science, Texas A&M University, College Station, Texas
J. P. Walter Jr.
Affiliation:
Department of Soil and Crop Science, Texas A&M University, College Station, Texas
J. B. Storey
Affiliation:
Department of Soil and Crop Science, Texas A&M University, College Station, Texas

Abstract

Trifluralin a,a,a-trifluoro-2,6-dinitro-N,N-dipropyl-p-toluidine) applied at 1.12 kg/ha inhibited lateral root development on field-grown pecan (Carya illinoensis (Wang.) K. Koch) seedlings. In a greenhouse study, inhibition of lateral roots, club-shaped radicles, and restricted penetration of tap roots resulted when pecans were planted in soil treated with 1.0 ppm trifluralin. When pecans were planted above soil treated with trifluralin, normal root development occurred only in the soil which had not been treated. Lateral roots were inhibited in the trifluralin-treated soil. Pecan nuts from trifluralin plots were smaller than those collected from controls, but other factors of quality were statistically equal or superior to nuts harvested in plots which had been treated with 2-chloro-4,6-bis-(ethylamino)-s-triazine (simazine) and 3-(3,4-dichlorophenyl)-1,1-dimethylurea (diuron). The smaller nut size was attributed to lateral root inhibition by trifluralin early during nut development.

Type
Research Article
Copyright
Copyright © 1970 Weed Science Society of America 

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References

Literature Cited

1. Ahrens, J. F. 1963. 1963 trials with herbicides in nursery plantings. Proc. No. East. Weed Contr. Conf. 18:220224.Google Scholar
2. Anderson, W. P., Richards, A. B., and Whitworth, J. W. 1967. Trifluralin effects on cotton seedlings. Weeds 15:224227.Google Scholar
3. Bingham, S. W. and Jones, J. R. 1967. Phytotoxicity of certain herbicides to several woody ornamentals. Proc. Amer. Soc. Hort. Sci. 91:786791.Google Scholar
4. Hacskaylo, J. and Amato, V. A. 1968. Effect of trifluralin on roots of corn and cotton. Weed Sci. 16:513515.Google Scholar
5. Lange, A. H. and Crane, J. C. 1967. The phytotoxicity of several herbicides to deciduous fruit tree plantings. Proc. Amer. Soc. Hort. Sci. 90:4755.Google Scholar
6. Norton, J. A., Storey, J. B., and Madden, G. D. 1967. Use of herbicides in pecan orchards in central and west Texas. Proc. Texas Pecan Growers Assn. 46:90101.Google Scholar
7. Norton, J. A. and Storey, J. B. 1968. Approved herbicide hastens pecan weed control success. The Pecan Quarterly 2(4):57.Google Scholar
8. Norton, J. A., Storey, J. B., and Madden, G. D. Use of herbicides in bearing and non-bearing Texas pecan orchards. Proc. So. Weed Conf. 22:238.Google Scholar
9. Oliver, L. R. and Frans, R. E. 1968. Inhibition of cotton and soybean roots from incorporated trifluralin and persistence in soil. Weed Sci. 16:199203.Google Scholar